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Visible/Thermal Imaging Vehicle System
Because everything generates heat, thermal security cameras can
see as well at night as they can during the day. Cameras dependant
on visible light aren't as effective at night or in low light without supplementary illumination from lights or lasers. Thermal security cameras overcome this problem by detecting a 0.1 degree difference
in temperature, not light, so you're never in the dark.
The RHP-TVK Series is integrated with pan/tilt multi-sensor thermal and visible-light imaging cameras and offers a variety of laser pointers/designators. This system is completely customizable and can be deployed as an integrated in vehicle monitoring system for comprehensive 24/7 threat detection while on the move.
RHP-TVK options include: system color, dual camera selection, monitor, and controller.
- 3G/HD/SD-SDI to HDMI Video Converter with Scaling
- Simultaneous 1 x HDMI and 2 x SDI output
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Simultaneous 1 x HD and 2 x SDI Output Video Converter During the integration of your camera you may need a few things along the way. We currently have the RHP-3GSDI-HDMI-S which is a 3G/HD/SD-SDI to HD Converter with Scaling
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What is 3G-SDI and HD-SDI? Generally spoken 3G-SDI is a successor technology to the well known and popular HD-SDI interface. It uses the same connectors and coaxial cables and is also completely downwards compatible. In a nutshell, it provides an increase in bandwidth which allows both higher resolutions and frame rates through a single connection. "Traditional" HD-SDI is a global standard, specified in SMPTE292M and allows HD video data to be transmitted as 10bit YUV (correctly: YCbCr) at 1.485 Gbit/s. Ancillary data such as time code and audio are embedded in the signal. Higher picture quality and frame rates such as RGB 4:4:4 or 50/60p can be realized through dual-link SDI connections. Dual link is also used for Stereo3D playback and record of two separate video streams in full resolution. |
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What is HDMI? HDMI (High-Definition Multimedia Interface) is a compact audio/video interface for transferring uncompressed video data and compressed/uncompressed digital audio data from a HDMI-compliant device ("the source device") to a compatible computer monitor, video projector, digital television, or digital audio device.<1> HDMI is a digital replacement for existing analog video standards. |
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RHP-BOS-DS-IF
Boson Dual Sensor Interface
The RHP-BOS-DS-IF Dual Thermal Sensor Interface is an innovative solution that combines a Thermal and Visible Camera on one board. With Dual Camera Control via Serial Connection, it allows users to easily switch between thermal and visible imaging modes. The interface provides Push Button, SBUS, PWM or Wireless Joystick control, and works with 6 to 26 Volt DC power sources. The Multi Window Mode, PiP, Split View, Single and Quad view options make it easy to view video in various formats. The 1920 x 1080 HD Visible camera is included on board, along with an IMU for easy integration and gimbal compatibility.
Options for connecting the BOS-DS-IF are:
- USB
- S-Bus (16 Channels)
- PWM (5 channels)
Multiple window modes:
Picture in Picture mode
Allows you to view one camera in a small frame and the other camera in the background.
Single View mode
See the complete view of either camera on the screen.
Split View Mode
Monitor both streams shown side by side.
Change Parameters On-The-Fly!
Customize Your Control
Power Protection
RHP-BOS-DS-IF Dimensions
RHP-BOS-DSU2-IF
Dual Sensor Board for Boson and E/O
Enter a new realm of technological efficiency with the RHP-BOS-DSU2-IF Dual Sensor Board for Boson/Boson+ by RHP International.
This board offers Dual USB Video over a single interface for a seamless, high-quality display experience. Designed to be used with any combination of Boson/Boson+ using a custom bracket allows you to optically center the cameras ensuring unmatched precision imaging and reduced visual distortion.
This dual sensor Board features two additional USB ports to connect other sensors or cameras making it a versatile choice for multiple applications. Despite its capabilities, the device features a small form factor ensuring it adapts perfectly to any setup without occupying space. With a wide input range of 5-17 Volts DC, it becomes an ideal choice for Drone, UAV, and UGV Implementation.
The device requires no drivers for operation, offering a simplified plug-and-play experience. It is compatible with varied operating systems like Windows, Mac, and Linux adding to its versatility.
RHP-BOS-USBC-IF
Video Power Communication Interface
The Low Profile BOSON USB-C Interface Module for the Teledyne FLIR Boson Thermal Imaging Camera is a cutting-edge accessory designed to elevate the performance of the FLIR camera system. This professional-grade VPC Kit features a reversible USB-C connector, ensuring ease of use and compatibility with modern devices. Notably, the module seamlessly supports both USB2 and USB3 speeds, providing versatility for various applications.
The inclusion of Sync IO enables users to synchronize images with other devices, enhancing workflow efficiency. Moreover, this module empowers users to stream multiple 16-bit video streams at a full 60Hz, delivering crystal-clear imagery for detailed analysis.
Designed to enhance usability, it fits perfectly with the Boson Tripod mount, facilitating thermal heatsinking for prolonged usage without compromising performance. Furthermore, its design matches the FLIR USB-C USB 2.0 VPC Kit profile, ensuring seamless integration and backwards compatibility with existing systems, thus making it a vital addition for professionals seeking top-tier thermal imaging capabilities.
VPC Kit with Reversible USB-C Connector
The BOSON USB-C Interface Module comes equipped with a VPC kit that includes a reversible USB-C connector. This modern connector allows for easy and hassle-free connections, saving you time and effort. Whether you are transferring data or connecting to other devices, the VPC kit ensures a reliable and efficient experience every time.
Supports both USB2 and USB3 Speeds
One of the standout features of the BOSON USB-C Interface Module is its ability to support both USB2 and USB3 speeds. This versatility means that you can use the module with a wide range of devices, ensuring seamless compatibility with your existing setup. Say goodbye to compatibility issues and enjoy high-speed data transfer no matter what devices you are using.
Sync I/O for Image Synchronization
Do you need to synchronize images across multiple devices? The BOSON USB-C Interface Module has you covered with its Sync IO feature. This handy function allows you to synchronize images with other devices effortlessly, making it ideal for professional applications such as video editing, image processing, and more.
Stream Multiple 16bit Video Streams at Full 60Hz
For professionals working with high-quality video streams, the BOSON USB-C Interface Module is a game-changer. This module allows users to stream multiple 16bit video streams at full 60Hz, providing a smooth and uninterrupted viewing experience. Whether you are editing videos or streaming content, this module offers the performance you need.
Fits with Boson Tripod Mount for Thermal Heatsinking
Worried about overheating during long periods of use? The BOSON USB-C Interface Module is designed to fit seamlessly with the Boson Tripod Mount, providing thermal heatsinking capabilities. This ensures that your module stays cool and reliable even during extended use, giving you peace of mind and uninterrupted performance.
Matches FLIR USB-C USB 2.0 VPC Kit Profile
Compatibility is key, especially when it comes to technology. The BOSON USB-C Interface Module matches the FLIR USB-C USB 2.0 VPC kit profile, ensuring seamless compatibility with existing systems. Whether you are upgrading your setup or integrating new devices, this module offers the flexibility you need without any compatibility issues.
200mm SWIR
Unlimited Applications can benefit from SWIR Technology.
StingRay specializes in bringing the best possible optics to market. The rest is up to you. New SWIR Applications are discovered every day and StingRay looks forward to service these future markets. StingRay's Goal is to stay one step ahead of detector technology.
Applications for SWIR:
- Plastic Sorting
- Agriculture Sorting
- Solar Cell Inspection
- Glass Inspection
StingRay SWIR Lenses are crafted using SWIR specific materials and coatings. Lower cost alternatives are generally inexpensive visible lenses that are coated with a 'SWIR-specific' coating. While this might work for some applications, the system will suffer from low overall transmission of SWIR light as well as focus shift across the SWIR band. This will produce a dark, fuzzy image.
StingRay lenses provide a boosted transmission which provides for a bright image and also gives a crisp focus due to it's achromatic correction.
What is SWIR?
Shortwave Infrared (SWIR) is identified as 900-1700nm.
Essentially, think of SWIR as 'light' that the human eye can't see. Unlike thermal infrared, SWIR behaves much like visible light as it is reflected as opposed to emitted.
How can we see it?
Humans can't see SWIR energy. By pairing an InGaAs
25-250mm SWIR
Unlimited Applications can benefit from SWIR Technology.
StingRay specializes in bringing the best possible optics to market. The rest is up to you. New SWIR Applications are discovered every day and StingRay looks forward to service these future markets. StingRay's Goal is to stay one step ahead of detector technology.
Applications for SWIR:
- Plastic Sorting
- Agriculture Sorting
- Solar Cell Inspection
- Glass Inspection
StingRay SWIR Lenses are crafted using SWIR specific materials and coatings. Lower cost alternatives are generally inexpensive visible lenses that are coated with a 'SWIR-specific' coating. While this might work for some applications, the system will suffer from low overall transmission of SWIR light as well as focus shift across the SWIR band. This will produce a dark, fuzzy image.
StingRay lenses provide a boosted transmission which provides for a bright image and also gives a crisp focus due to it's achromatic correction.
What is SWIR?
Shortwave Infrared (SWIR) is identified as 900-1700nm.
Essentially, think of SWIR as 'light' that the human eye can't see. Unlike thermal infrared, SWIR behaves much like visible light as it is reflected as opposed to emitted.
How can we see it?
Humans can't see SWIR energy. By pairing an InGaAs
25-250mm SWIR
Unlimited Applications can benefit from SWIR Technology.
StingRay specializes in bringing the best possible optics to market. The rest is up to you. New SWIR Applications are discovered every day and StingRay looks forward to service these future markets. StingRay's Goal is to stay one step ahead of detector technology.
Applications for SWIR:
- Plastic Sorting
- Agriculture Sorting
- Solar Cell Inspection
- Glass Inspection
StingRay SWIR Lenses are crafted using SWIR specific materials and coatings. Lower cost alternatives are generally inexpensive visible lenses that are coated with a 'SWIR-specific' coating. While this might work for some applications, the system will suffer from low overall transmission of SWIR light as well as focus shift across the SWIR band. This will produce a dark, fuzzy image.
StingRay lenses provide a boosted transmission which provides for a bright image and also gives a crisp focus due to it's achromatic correction.
What is SWIR?
Shortwave Infrared (SWIR) is identified as 900-1700nm.
Essentially, think of SWIR as 'light' that the human eye can't see. Unlike thermal infrared, SWIR behaves much like visible light as it is reflected as opposed to emitted.
How can we see it?
Humans can't see SWIR energy. By pairing an InGaAs
30-300mm SWIR
Unlimited Applications can benefit from SWIR Technology.
StingRay specializes in bringing the best possible optics to market. The rest is up to you. New SWIR Applications are discovered every day and StingRay looks forward to service these future markets. StingRay's Goal is to stay one step ahead of detector technology.
Applications for SWIR:
- Plastic Sorting
- Agriculture Sorting
- Solar Cell Inspection
- Glass Inspection
StingRay SWIR Lenses are crafted using SWIR specific materials and coatings. Lower cost alternatives are generally inexpensive visible lenses that are coated with a 'SWIR-specific' coating. While this might work for some applications, the system will suffer from low overall transmission of SWIR light as well as focus shift across the SWIR band. This will produce a dark, fuzzy image.
StingRay lenses provide a boosted transmission which provides for a bright image and also gives a crisp focus due to it's achromatic correction.
What is SWIR?
Shortwave Infrared (SWIR) is identified as 900-1700nm.
Essentially, think of SWIR as 'light' that the human eye can't see. Unlike thermal infrared, SWIR behaves much like visible light as it is reflected as opposed to emitted.
How can we see it?
Humans can't see SWIR energy. By pairing an InGaAs
24VAC Outdoor Power Supply
The FLIR 24VAC Outdoor Power Supply provides power via two (2) fuse-protected outputs for FLIR thermal security cameras. The power supply offers a variety of configurations to power up to four outdoor units from a single source. With two 24 or 28 VAC outputs, the 24VAC Power Supply compensates for voltage losses over long wire runs and offers different input voltages. Capable of powering integrated systems, the power supply also allows for full use of cameras with pan/tilt, heating, and blowing functionalities.
FLIR 12V 4" Blackbody Source
for ALC & Supplemental FFC, offers a uniform temperature source for FLIR Tau 2 Thermal Cameras.
Low cost 4-inch blackbody which provides a uniform temperature source when using FLIR's Alt Lens Cal software to field-calibrate lens-less Photon or Tau cameras with third-party lenses, or to take advantage of the Supplemental Flat Field Correction (FFC) option available in the Tau 2, Vue Pro and many other radiometric camera models.
A blackbody is an important contributor to accurate thermography. In theory, a blackbody is an object with a known emissivity of 1, which means that it perfectly absorbs and radiates all thermal energy. In practice, blackbody simulators based on the theoretical model have an emissivity ranging from 0.9 to 0.99. This is good enough to provide the information needed to correctly calibrate a thermal camera.
- The FLIR Blackbody requires DC Voltage and has an input range of 0-24VDC.
- There are two power input plugs on the side of the blackbody, red is positive voltage, and black is ground.
- The kit includes one power supply that outputs 12VDC and gives an approximate blackbody temperature of 60° C / 140° F.
Temperature settings can be modified by the customer, depending on the power supply voltage. A voltage-to-approximate-temperature conversion table is provided.
Max Voltage 24VDC, Max Current 2.5 ADC
FLIR Boson - 13.8mm Lens
Compact LWIR Thermal Camera
The Boson longwave infrared (LWIR) thermal camera module sets a new standard for size, weight, power, and performance (SWaP). It utilizes FLIR infrared video processing architecture to enable advanced image processing and several industry-standard communication interfaces while keeping power consumption low. The 12 µm pitch Vanadium Oxide (VOx) uncooled detector comes in two resolutions – 640 x 512 or 320 x 256. It is available with multiple lens configurations, adding flexibility to integration programs.
With a weight as low as 7.5g and a camera body as small as 21 x 21 x 11 mm, the Boson represents an industry-leading reduction in SWaP with no reduction in performance. Advanced embedded processing and video analytics, as well as software-customizable functionality, give this small camera big capabilities, including integration with auxiliary sensors such as third-party cameras, GPS, and IMU.
DRAMATIC REDUCTION IN SIZE, WEIGHT AND POWER (SWaP) WITH NO REDUCTION IN PERFORMANCE
A full-featured VGA thermal camera module at less than 4.9cm3.
- 21 x 21 x 11 mm camera body and weight as low as 7.5g.
- Low power consumption, starting at 500 mW
- 12 µm pixel pitch VOx microbolometer with 320 and 640 resolutions.
- Rugged construction and -40 °C to 80 °C.
POWERFUL INFRARED VIDEO PROCESSING ARCHITECTURE
FLIR infrared video processing with embedded industry-standard interfaces empowers advanced analytics.
- Embedded noise filters, gain control, blending, and more.
- Software-customizable processing and power options.
- Built-in support for interface standards.
WIDE CONFIGURABILITY FOR FASTER DEVELOPMENT AND LOWER COST-TO-MARKET
Unprecedented integration flexibility for fast, affordable developments.
- Custom applications via third-party developers.
- Mechanical/electrical compatibility across versions.
- OEM integration flexibility.
FLIR Boson 18mm Lens
Compact LWIR Thermal Camera
The Boson® longwave infrared (LWIR) thermal camera module sets a new standard for size, weight, power, and performance (SWaP). It utilizes FLIR infrared video processing architecture to enable advanced image processing and several industry-standard communication interfaces while keeping power consumption low. The 12 µm pitch Vanadium Oxide (VOx) uncooled detector comes in two resolutions – 640 x 512 or 320 x 256. It is available with multiple lens configurations, adding flexibility to integration programs.
With a weight as low as 7.5g and a camera body as small as 21 x 21 x 11 mm, the Boson represents an industry-leading reduction in SWaP with no reduction in performance. Advanced embedded processing and video analytics, as well as software-customizable functionality, give this small camera big capabilities, including integration with auxiliary sensors such as third-party cameras, GPS, and IMU.
DRAMATIC REDUCTION IN SIZE, WEIGHT AND POWER (SWaP) WITH NO REDUCTION IN PERFORMANCE
A full-featured VGA thermal camera module at less than 4.9cm3.
- 21 x 21 x 11 mm camera body and weight as low as 7.5g.
- Low power consumption, starting at 500 mW
- 12 µm pixel pitch VOx microbolometer with 320 and 640 resolutions.
- Rugged construction and -40 °C to 80 °C.
POWERFUL INFRARED VIDEO PROCESSING ARCHITECTURE
FLIR infrared video processing with embedded industry-standard interfaces empowers advanced analytics.
- Embedded noise filters, gain control, blending, and more.
- Software-customizable processing and power options.
- Built-in support for interface standards.
WIDE CONFIGURABILITY FOR FASTER DEVELOPMENT AND LOWER COST-TO-MARKET
Unprecedented integration flexibility for fast, affordable developments.
- Custom applications via third-party developers.
- Mechanical/electrical compatibility across versions.
- OEM integration flexibility.
FLIR Boson - 2.3mm Lens
Compact LWIR Thermal Camera
The Boson longwave infrared (LWIR) thermal camera module sets a new standard for size, weight, power, and performance (SWaP). It utilizes FLIR infrared video processing architecture to enable advanced image processing and several industry-standard communication interfaces while keeping power consumption low. The 12 µm pitch Vanadium Oxide (VOx) uncooled detector comes in two resolutions – 640 x 512 or 320 x 256. It is available with multiple lens configurations, adding flexibility to integration programs.
With a weight as low as 7.5g and a camera body as small as 21 x 21 x 11 mm, the Boson represents an industry-leading reduction in SWaP with no reduction in performance. Advanced embedded processing and video analytics, as well as software-customizable functionality, give this small camera big capabilities, including integration with auxiliary sensors such as third-party cameras, GPS, and IMU.
DRAMATIC REDUCTION IN SIZE, WEIGHT AND POWER (SWaP) WITH NO REDUCTION IN PERFORMANCE
A full-featured VGA thermal camera module at less than 4.9cm3.
- 21 x 21 x 11 mm camera body and weight as low as 7.5g.
- Low power consumption, starting at 500 mW
- 12 µm pixel pitch VOx microbolometer with 320 and 640 resolutions.
- Rugged construction and -40 °C to 80 °C.
POWERFUL INFRARED VIDEO PROCESSING ARCHITECTURE
FLIR infrared video processing with embedded industry-standard interfaces empowers advanced analytics.
- Embedded noise filters, gain control, blending, and more.
- Software-customizable processing and power options.
- Built-in support for interface standards.
WIDE CONFIGURABILITY FOR FASTER DEVELOPMENT AND LOWER COST-TO-MARKET
Unprecedented integration flexibility for fast, affordable developments.
- Custom applications via third-party developers.
- Mechanical/electrical compatibility across versions.
- OEM integration flexibility.
FLIR Boson 36mm Lens
Compact LWIR Thermal Camera
The Boson longwave infrared (LWIR) thermal camera module sets a new standard for size, weight, power, and performance (SWaP). It utilizes FLIR infrared video processing architecture to enable advanced image processing and several industry-standard communication interfaces while keeping power consumption low. The 12 µm pitch Vanadium Oxide (VOx) uncooled detector comes in two resolutions – 640 x 512 or 320 x 256. It is available with multiple lens configurations, adding flexibility to integration programs.
With a weight as low as 7.5g and a camera body as small as 21 x 21 x 11 mm, the Boson represents an industry-leading reduction in SWaP with no reduction in performance. Advanced embedded processing and video analytics, as well as software-customizable functionality, give this small camera big capabilities, including integration with auxiliary sensors such as third-party cameras, GPS, and IMU.
DRAMATIC REDUCTION IN SIZE, WEIGHT AND POWER (SWaP) WITH NO REDUCTION IN PERFORMANCE
A full-featured VGA thermal camera module at less than 4.9cm3.
- 21 x 21 x 11 mm camera body and weight as low as 7.5g.
- Low power consumption, starting at 500 mW
- 12 µm pixel pitch VOx microbolometer with 320 and 640 resolutions.
- Rugged construction and -40 °C to 80 °C.
POWERFUL INFRARED VIDEO PROCESSING ARCHITECTURE
FLIR infrared video processing with embedded industry-standard interfaces empowers advanced analytics.
- Embedded noise filters, gain control, blending, and more.
- Software-customizable processing and power options.
- Built-in support for interface standards.
WIDE CONFIGURABILITY FOR FASTER DEVELOPMENT AND LOWER COST-TO-MARKET
Unprecedented integration flexibility for fast, affordable developments.
- Custom applications via third-party developers.
- Mechanical/electrical compatibility across versions.
- OEM integration flexibility.
